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Groundwater Changes In The Wairakei-tauhara Geothermal System

机译:怀拉基-陶哈拉地热系统中的地下水变化

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Overlying most of the Wairakei-Tauhara geothermal system is a sequence of shallow aquifers. Some of these are groundwaters heated by fluids escaping from the deep geothermal reservoir, others are cold; some are extensive and confined, others are perched, unconfined and of limited extent. Water levels of some of the shallow aquifers have declined at various times throughout the history of geothermal development. One of the mechanisms causing the observed changes is an increase in groundwater downflow into depressurizing steam zones. This occurs through natural fractures that once channelled the ascent of two-phase fluids. Another important mechanism is internal downflow within boreholes connecting permeable aquifers that were otherwise hydrologically separated. These cool downflows have had a significant impact on the deeper reservoir, and also affect the discharge characteristics of surface thermal features. However, in the Southern Tauhara sector, outflows of dilute chloride fluid from shallow thermal aquifers have not been affected by the deep pressure drawdown. This could be attributed to liquid or two-phase upflow continuing to recharge the chloride component in the south, or to significant quantities of residual chloride in a large geothermally heated aquifer still masking recharge depletion that has occurred during the last 50 years.
机译:怀拉基-陶拉拉地热系统的大部分覆盖着一系列浅层含水层。其中一些是被深层地热储层逸出的地下水加热的地下水,另一些是冷的。有些是广泛的和封闭的,有些则是栖息的,不受限制的,而且程度有限。在整个地热发展的历史中,某些浅层含水层的水位在不同时期有所下降。引起观察到的变化的机制之一是增加地下水进入降压蒸汽区的流量。这是通过自然裂缝发生的,该裂缝一旦引导了两相流体的上升。另一个重要的机制是井眼内部的向下流动,这些井眼将水文上分开的渗透性含水层连接起来。这些冷流对深层储层产生了重大影响,并且还影响了地表热特征的排放特征。然而,在南陶哈拉地区,深层压力下降并未影响浅层含水层中稀氯化物流体的流出。这可能是由于液相或两相向上流继续补充南部的氯化物成分,或者归因于大型地热加热含水层中的大量残留氯化物,仍掩盖了过去50年中发生的补给损耗。

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